Improved constraints on lower-mantle composition are fundamental to understand the accretion, differentiation, and thermochemical evolution of our planet. Cosmochemical arguments indicate that lower-mantle rocks may be enriched in Si relative to upper-mantle pyrolite, whereas seismic tomography images suggest whole-mantle convection and hence appear to imply efficient mantle mixing. This study reconciles cosmochemical and geophysical constraints using the stagnation of some slab segments at ~1000-km depth as the key observation. Through numerical modeling of subduction, we show that lower-mantle enrichment in intrinsically dense basaltic lithologies can render slabs neutrally buoyant in the uppermost lower mantle. Slab stagnation (at depths...
International audienceWe use regional scale numerical models of mantle convection to investigate the...
Numerical models of mantle convection are presented that readily yield midocean ridge basalt (MORB) ...
International audienceWe use regional scale numerical models of mantle convection to investigate the...
Tomographic imaging indicates that slabs of subducted lithosphere can sink deep into Earth's lower m...
A boundary between compositionally distinct regions at a depth of about 1600 kilometers may explain ...
We review the present state of our understanding of mantle convection with respect to geochemical a...
On a global scale basalts from mid-ocean ridges are strikingly more homogeneous than basalts from in...
On a global scale basalts from mid-ocean ridges are strikingly more homogeneous than basalts from in...
In the present-day Earth, some subducting plates (slabs) are flattening above the upper–lower mantle...
On a global scale basalts from mid-ocean ridges are strikingly more homogeneous than basalts from in...
Numerical mantle convection models indicate that subducting slabs can reach the core-mantle boundary...
Abstract Determining the fate of subducted oceanic crust is critical for understanding material cycl...
Mapping the thermal and compositional structure of the upper mantle requires a combined interpretati...
Mapping the thermal and compositional structure of the upper mantle requires a combined interpretati...
Plate subduction and mantle plumes are two of the most important material transport processes of the...
International audienceWe use regional scale numerical models of mantle convection to investigate the...
Numerical models of mantle convection are presented that readily yield midocean ridge basalt (MORB) ...
International audienceWe use regional scale numerical models of mantle convection to investigate the...
Tomographic imaging indicates that slabs of subducted lithosphere can sink deep into Earth's lower m...
A boundary between compositionally distinct regions at a depth of about 1600 kilometers may explain ...
We review the present state of our understanding of mantle convection with respect to geochemical a...
On a global scale basalts from mid-ocean ridges are strikingly more homogeneous than basalts from in...
On a global scale basalts from mid-ocean ridges are strikingly more homogeneous than basalts from in...
In the present-day Earth, some subducting plates (slabs) are flattening above the upper–lower mantle...
On a global scale basalts from mid-ocean ridges are strikingly more homogeneous than basalts from in...
Numerical mantle convection models indicate that subducting slabs can reach the core-mantle boundary...
Abstract Determining the fate of subducted oceanic crust is critical for understanding material cycl...
Mapping the thermal and compositional structure of the upper mantle requires a combined interpretati...
Mapping the thermal and compositional structure of the upper mantle requires a combined interpretati...
Plate subduction and mantle plumes are two of the most important material transport processes of the...
International audienceWe use regional scale numerical models of mantle convection to investigate the...
Numerical models of mantle convection are presented that readily yield midocean ridge basalt (MORB) ...
International audienceWe use regional scale numerical models of mantle convection to investigate the...